Search alternatives:
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
nm decrease » nn decrease (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
mg decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
2 step » _ step (Expand Search), a step (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search)
nm decrease » nn decrease (Expand Search), _ decrease (Expand Search), a decrease (Expand Search)
mg decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
we decrease » _ decrease (Expand Search), a decrease (Expand Search), nn decrease (Expand Search)
2 step » _ step (Expand Search), a step (Expand Search)
5 nm » 5 mm (Expand Search), 5 cm (Expand Search)
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Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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167
Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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168
Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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169
Investigation of <i>In Vacuo</i> Atomic Layer Deposition of Ultrathin MgAl<sub>2</sub>O<sub>4</sub> Using Scanning Tunneling Spectroscopy
Published 2020“…Decreasing the number of supercycles from 3 (∼0.99 nm) to 1 supercycle (∼0.33 nm) resulted in a monotonic decrease in CBM from 1.71 to 1.49 eV, showing some frustration of growth during earlier atomic layer deposition cycles. …”
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Table_1_Urban-driven decrease in arthropod richness and diversity associated with group-specific changes in arthropod abundance.DOCX
Published 2023“…Studying ecological networks in urban ecosystems is the next step that will allow to understand how urbanisation alters biodiversity.…”
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Ratcheting experiments with 500 nm & 100 nm magnetic particles.
Published 2021“…For these experiments, particle suspensions were prepared by diluting particle stock into PBS, obtaining concentrations of ~5.1E7/mL for 500 nm and ~3.0E9/mL for 100 nm magnetic particles.…”
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